H9c2 undergoing cardiac differentiation induced by all-trans-retinoic acid were investigated for mitochondria structural features together with the implied functional changes, as a model for the study of mitochondrial development in cardiogenic progenitor cells. As the expression of cardiac markers became detectable, mitochondrial mass increased and mitochondrial morphology and ultrastructure changed. Reticular network organization developed and more bulky mitochondria with greater numbers of closely packed cristae and more electron-dense matrix were detected. Increased expression of PGC-1\u3b1 proved the occurrence of mitochondrial biogenesis. Improvements in mitochondrial energetic competence were also documented, linked to better assembl...
Background: Preferential utilization of fatty acids for ATP production represents an advanced metabo...
The heart is a metabolic omnivore and the adult heart selects the substrate best suited for each cir...
AIMS: The differentiation of embryonic stem (ES) cells into energetically efficient cardiomyocytes c...
Continuous developmental maturation of cardiomyocytes is essential to meet the functional and metabo...
Pluripotent stem cells (PSCs) can undergo unlimited self-renewal and can differentiate into all the ...
SummaryAlthough mature myocytes rely on mitochondria as the primary source of energy, the role of mi...
Despite being resident in the heart, which derives most its energy needs from the oxidation of fatty...
H9c2 myoblasts are a cell model used as an alternative for cardiomyocytes. H9c2 cells have the abili...
H9c2 myoblasts are a cell model used as an alternative for cardiomyocytes. H9c2 cells have the abili...
Cardiac progenitor cells (CPCs) in the adult mammalian heart, as well as exogenous CPCs injected at ...
Introduction: With an increased understanding of myocardial infarction human mesenchymal stem cell (...
© 2015 Branco et al. This is an open access article distributed under the terms of the Creative Comm...
© 2015 Branco et al. This is an open access article distributed under the terms of the Creative Comm...
© 2015 Branco et al. This is an open access article distributed under the terms of the Creative Comm...
Background: Preferential utilization of fatty acids for ATP production represents an advanced metabo...
Background: Preferential utilization of fatty acids for ATP production represents an advanced metabo...
The heart is a metabolic omnivore and the adult heart selects the substrate best suited for each cir...
AIMS: The differentiation of embryonic stem (ES) cells into energetically efficient cardiomyocytes c...
Continuous developmental maturation of cardiomyocytes is essential to meet the functional and metabo...
Pluripotent stem cells (PSCs) can undergo unlimited self-renewal and can differentiate into all the ...
SummaryAlthough mature myocytes rely on mitochondria as the primary source of energy, the role of mi...
Despite being resident in the heart, which derives most its energy needs from the oxidation of fatty...
H9c2 myoblasts are a cell model used as an alternative for cardiomyocytes. H9c2 cells have the abili...
H9c2 myoblasts are a cell model used as an alternative for cardiomyocytes. H9c2 cells have the abili...
Cardiac progenitor cells (CPCs) in the adult mammalian heart, as well as exogenous CPCs injected at ...
Introduction: With an increased understanding of myocardial infarction human mesenchymal stem cell (...
© 2015 Branco et al. This is an open access article distributed under the terms of the Creative Comm...
© 2015 Branco et al. This is an open access article distributed under the terms of the Creative Comm...
© 2015 Branco et al. This is an open access article distributed under the terms of the Creative Comm...
Background: Preferential utilization of fatty acids for ATP production represents an advanced metabo...
Background: Preferential utilization of fatty acids for ATP production represents an advanced metabo...
The heart is a metabolic omnivore and the adult heart selects the substrate best suited for each cir...
AIMS: The differentiation of embryonic stem (ES) cells into energetically efficient cardiomyocytes c...